Balanced Optical Receiver, 900-1700 nm InGaAs Detector, 80 MHz, Free Space

The 1817-FS InGaAs Balanced Optical Receiver is ideal for coherent heterodyne-detection applications including Doppler LIDAR, and optical coherence tomography. This free space, 900 to 1700 nm, DC to 80-MHz balanced receiver can make the difference when you need to see a small signal. Just like our Model 16x7-AC-FS 650-MHz and 800-MHz balanced receivers, the Model 1817-FS balanced receiver works by subtracting the photocurrent from two well-matched photodetectors. Common-mode noise that is present on both the reference and signal beams (such as laser-intensity noise) is cancelled out and doesn't appear as part of the signal. Any imbalance between the photocurrents generated by the reference and signal detectors, whether intentional or unintentional, is amplified and is seen as the signal. These Models 18X7 receivers contain the same detectors as those in our Model 18X1 Series receivers, and provide higher gain than their wider-bandwidth 650-MHz and 800-MHz balanced receiver counterparts. These units are sold as FC-connectorized versions only. 8-32 mounting thread. M4 metric adaptor and tool now included.
To ensure safe operation, we strongly recommend our Model
Specifications
- Device TypeBalanced Receiver
- Optical InputFree Space
- Detector MaterialInGaAs
- Detector TypePIN
- Detector Diameter0.15 mm
- Wavelength Range900-1700 nm
- 3 dB BandwidthDC to 80 MHz
- Rise Time3 ns
- Maximum Conversion Gain4 x 104 V/W
- Maximum Transimpedance Gain40 V/mA
- Peak Responsivity1.0 A/W @ 1550 nm
- Integrated Noise5 mVrms
- Common Mode Rejection25 dB
- Saturation Power55 µW @ 1550 nm
- Maximum Differential Power5 mW @ 1550 nm
- 5 mW @ 1550 nm
- Maximum RF Power+12 dBm bei 50 Ω
- Output ConnectorSMA
- Output Impedance33 Ω
- Power Requirements±15 VDC, 250 mA
- Thread Type8-32
Resources & Downloads
2D Product Drawings
18X7 Drawing(227.8 kB, PDF)
Manuals
18x7 Balanced Photoreceiver User Manual(1.9 MB, PDF)
Other
RoHS Declaration 80 MHz Family.pdf(223 kB, PDF)
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